
MS018855 (gene) Bitter gourd (TR) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below.GTGAAGTTCTGTGCTCGACCCCGCGCTATAATGCCACTAAATGGTATTTGCAGTCCCTGCAATGCTAATCCAAACCCAACTTCTACATTTCAGCTAGTTTCTCCATCTGCAATTCGACCTAATGTGTTATATTTTCTCAACCCACCTTCCGTCAACCTTGGTTCCAGCTCGTGCTATTCCAGATTTTCCCGCGTTGTTGGCCCACTTAGGAGCGCGGATTTTCAAACCAGAAGTCGATTAACATTCGTACGCCGTGGTGCAAGTGCAACAGGGTCTGCCGCTACTGATCACTATTCGACGTTGAATGTTAGCCGGAACGCCACATTGCAGGAAATCAAAAACTCATATAAGAAACTCGCCCGTAAGGTATTTTCCTTTTAAATTCATCTAATAGTTTATTATTGATTTTAACGGGACTTCTTGGTCGCCAGTGAAGCGAATTGGATGGTAAAAAATCGAACGGAACTGCAGTGTGGAAGAGATAATGAAAAACTAGAGACGTGAAAGAAACATAAAATTTCAAGCGTTATGTATATGTTATGCAATTGGCAATCGCGGCCATACATCGGTGCATCTACATGGGTGATTCATTTGATATCCCCACCCCCGGCCCACCCCTAAAGAGAGAGAGCTAGACAAGTTGGGCAGAATAAGTTTCTTGTAGAAATTTAAGAAACAAACTTACTTTTTAAGATTCTAGCTGCTGGGACGCTGGCTAGTACTTTTAAGAAGTCAACTTTGGCCAAGGATCTGAACAATAAACTTCTACCAAGTTGGAATTCGACTACAAAAATTGCCTGCTTTACTTTTTCTCTAGGACGACAAGCCCCTAAGTTTTATCCCTTTGTAAATAAAGGTGATCGTGATTCGGTTTTGAATTACTTCTTTGGACGCTGCGGAGTACGACATAAATTTTTTTAAAAACAAGAAACGAACATTTATTGATAAATGAAAAGGAACATTGATGTTCAAAGATATAAACTCCCGAAGGAGCGTAAGCAAAGAAAAGAAACGAACAAAAAATAAATAGAATAAGAGACAAGAAAAATTAGAAAATAAATTAGAAAGAGCACACCATTGAGAGACCTTGAACTTTGGCGAGGCTGGAGCTTTCAATCGAAGATTTACTTTTCCCTTCGAAGATCATTTGATTCCTTTGGAACCATAGATCGAACAAATCGTATTAGAAGAATTATTAGCAAATAAAAATCATCTATCAATGAAAAGTTAATATCTTGTTTGAGAAAAGAAGAAGCAAATTAATTAGAAAGAGAACACTATTGAGAGACCTTGAACTCGACATGGTTGAAGCTTTCCAACGGAGATTTATTTTTCCCTTTGAAGATCCTTTCATTCCTTTCAAACCATAGATCAAAACACGACTTTAACAATGTTGCACTAAAGAAGACTTGCTTCGGGGACTCAAACTAGACCAAACAGCAGAGAGTTGACATCTGTCAAGACATTCAACTCAAAAGCCCATGAAACGTGAAAAATCTCGAATAAGAGCCTACAACAAACTGAAGCTTAAGGGTAGTGGAAGAAGAGATGCTGCAGAGTTTCACAAGAATTATCACATAAGATACAAATTGATGGATGAAGGATCTAGTGGCTCTGTTAGAGTTATTGGGGGATTTTGTTGTTAGTTCGAGGAGGAGAGATGCCCATCCGTACTCTCCTAACATTACAGAAGGATTTTCTTGTAAATAATTTTTTTCGTGTCTGGCGGACTCCAATCCTTCTCATTGTACTGTTTTCTTTTCGCTTTGGGAAGGTTAAGGTTCCAAAGAAAGATAAGATTTTTTGTCTGGCAAGTCTTACATGGCAGGATTAATACGTTGGATCGTATAGCTTTGCAATGAATTTTTAAAGAATTCATAGTTTCTTTTCTCAAATACATCTCTTGCCTTTCTCATCCTTAGTTGGATGAATTTTTAGTTATTATCAACTCCGAGCTTGTCAGGCTTCGCAATGAATGAATTATGTTGATAGAAGAGTTTTCTAGAAGAAGGTTGAAAATAAAAGCTGACCAGGTTTGAGAGTTAGCTGAAGTTCGAGTAAAATTTTCTTAGGATCTAAAAGATCTTTATTTAGAAGATAAAAGAGGGGGTTGCTGGCAAGCTTGAAGCTAAAGGCTTAAAACTTCTCTCTTTTGTGTTCGAGCATCTTGGTGGAATGTTTTGTTTGTAGTTTGCTTGTTCTTTTTGTTGCTTTTATTAGTGTTCTCATTTTGATTGTAAAGCTCCTGGTCCAACCCTTTTTTCTACTTTAGTCCGTTCTGTAGTTTTGTGAGAAAGGTAATTTTTCTTATTTCCCAGAACAACCCATTTAGGGGTAAATATACAAGAAGACCTTTAAACAAATAAGGAATTAATCTAAGCCTATAAGGAAAAAATAAAATTACAGAATATACAGAGATATAATAGCAATGCAAATTCTAATAAGGAAAAACTTAATTTACGGCTTGATTTTCTACACTCCCCCTCAAGCTGGATGATATATGCTTGTCATTCCAAGTTTTGAGATTAATCTACTAAGGCTGGGTCGATGCAATGCCTTAGTTAAAATGTCAGCAACTTGTTGTTGGGAAGATACATATCTCAGATTGATAGTATTTGTCTCAAAGATCTTCTCGCTGATGAAGTGACGATCTATTTCGACATGTTTCATCCGATCATGATGTATTGGATTTCTTGCAATGGCTATGGCAGGTTGATTGTCACACAGTACCTCTATAGTACCTTCTGTCTTCACCTTGAGCTTAGTGAGAAGACGTTTCAACCAAACTTCTTCACAGATCCCATGGGCTAATGATCGAAACTCAGCTTCAGCACTACTTCAAGCTACAACTTGCTGTTTCTTACTACGCCAGGTTACTAGATTCCCCCATACGTAGGAACAGTATCCTGTGTTGACTTACGGTCAATAGGAGATCCAACCCAATCTGCATCCGTGTAGACTTTAAGAGCTCGGTTCGTGGTCTTTCTGAACATCAGTCATTTTCCAGGATCGTGTTTGAGATATCTCAATATTCTATACACAGCTTCCATATTCTCCTTTGAAGGTTTGTTCAGAAATTGACTTACCACACTAACAAAAAAACTGTTCAGAAATTGACTTACCACACTAACAACAAAACTAATGTCTGGTCGCGTATGAGTTAAGTATATTAGCTTTCCAACTAGGCGTTGATATCTGCCTCGATCAACTGGTTCATCTTCAGGATTAACTCCAAGTATTGAATTTGCATCCATAGGAGTGTCTATTGGTTTACAACCACTCATCCCGGTCTCTATTAGGAGATCTAAAGTGTACTTTCGTTGAGTGACAGAAATCCCTTTACTAGATCTTGCTACTTCCGTACCTAAGAAATACCTTAGGTGTCCCAAGTCTTTGATCTCAAATTTCTTTGAGAGAAGTTGCTTTAGATGAACCATTTCTTCAGAAACATTTCCTGTAAGTATTATATCATCAACATATACTATTAATACAGTGATCTTACTTGGTGAGAAGTGCTTGATAAAGAGGGTATGATCAGATTGACACTAGGTATGGCTGTCTTGTTTCAACACATTTGTAAATTTTTCAAACCAGGCCCGAGGTGACTATTTTAGTCCATAAAGAGACTTCCTGAGTTTACCTACTTTTCCCTTAGTGTATCTGTCCTCAAATCCAGGAGGTATGTCCATGTACACTTCCTCTACTAAATCACCATTTAGGAATGCATTCTTCACATCAAGTTGAAACAACGGCCAATCTAGATTTGTTGCAATGGAGAGAAGTACCCGAATAGTATTTAGTTTGCCAACTGGAGCAAAGGTTTCTTGATAGTTAATTCCATAAGCTTGGGTGAAGCCTTTAGCCACCAGACGAGCTTTGAATCGTTCTATACCGCCATCTGGTTTGTGTTTGATTGAGAAAATCCATTTACATCCAACTGTGCGCTTACCTGGGCTAAGTTTGTAAGGATTCACGTCCCAATTTTCTCCAGAGCCTGCAACTCTTCTAGAGTAGCAGCCTTCCATTTAGGTTTCTGTAAGGCTTTTTGAACTGTGTTGGGAGTTTGTACCTGATCTAGTGAAGTCACAAAAGCTCTAAAACACGGCGACAGATTAGTGTAAGACAAGTGATACCGTATGGGATGTTGGGTACATGAGCAAATACCTTTCCTGACAGCAATGGGTCTATCATCTTCTGATGTCTCGTGTGCTATTTCAGGGACATTGAGATTTTGGTTTAGATCTTGGCTTTGTTGAACTTGTGTAGGTTGTATTTCGTTCCTCTCAGGTTGTCTTGTTCGTTGCGAATAAACTTGCAGTTTAGCCTCAAAGGGAGATATGTGAGTTGGCTCAGAAGGAGGTACAGGTGAACTCTCAGAGAATGGAATTGTCTCAGAAGAGGGTACAAGAGAACTCTCAAAGGATGGATTTAAAGAGAAGTCAGGAATGCAATCCCAATTTTGTGACTCAAGAGCAGAATTCTCCCCCTGAAGGACAGAATTGGGATAATATGGTTGATTTTCAAAGAAGGTGACATCCATAGTATGAAAGAATTGGTGAGTGGGAGGATGATAACACTTGTATCCTTTCTTATTTGGCGAGTACCCAATAAAGATACATTTTATGGATCGTGCATCAAGCTTACAGCCCCTTTCCTAACTGTCCTTTGGGAAGGAATTTCCCTCTCTACCCCTCCTTACATAGGTATTTACAATGGGGGGCCTCACAGACACGATCGTCAGGACATTTCCATTCATGAGTTTCAAATAAATCTAGTTTTTGCCAGTAGCGAGATAAATTGGAGTAGTATGCTGTAACTGTTGAATCACCTTGTTTAATATCTTGGAGAGTAGTCTCTATCTGGAACAACTTAGCAGTGTTTTCTTTATTGGAAAATGTATCCTCAGCAGCATCCCAAATTTCTTTGGCAGTAGAAAATAGGAGAAAATTCTCACCAATTTCAGTGGTCATGAAATTTATTAACCAGCTCATTACTTGATTGTTTTCAGCCCTCCATTTGCGAAATGTTGAATCATCGGGTTTGGGTGATTATCTTTACCGGTGATATAGTCTTCCCGTCCACGACCATACATGAACATCATCACTGATTGGGACCACTGAAGGTAATTGTGGCCATTGAGTTTGTGACATGTTATCGGATTATTGTTGCTTTCGGAAAACGACAAGACGTTAATTTGTGATTCTGAACCTGCCATTACAAAAAAAATGGTGTAAGGAGCTGTGATTCGGAATAAAGTATTGGTAGCGGCAGCGGCGGCGCGCTTGGCGGCGGTGGCGGATGCAGCTGCAGAGATTATGGCGGCGGCGGCGAGCTCGGCAGCGACGGCGGACGCAGCAGCAGAGACTATGGCAGCGGCACCGGGAGAGAATCCAGGCGATGGCGGACTTCTGCAAAAGAAAAGAAAACAAGTGGGATCTGCGACGAGTGGGTTTCTCGGTGATTGACCGGAGCTACGACGGCACCTGCGACGAGAGCTGGGATCTGTGGCGGAAGCGACGGCACCTGCAACAGGATCGACGGAATGAAGAATCTGTGGAAGATCGATGAGATCAACGGCGGCGGAAGGAGACGACCGTCGGTGGTTGATATTGACGATGGCAGATGCCTGCCGGAGGTTGATATTGAAGACTGCGGCGGCTAGGGTTTTTCAGATTCTGGCGGCTAGGGTTTTTCAGATTCTAGGGTTTATTTCCTAGAGCTCTGATACCATGTTGTTTTGTGAGAAAGGTAATTTTTCTTATTTCCCAAAACAACCCATTTAGGGTAAATGGACAAGAAGACCTTTAAACAAATAAGGAATTAATCTAAGCCTATAAGGAAAAAATAAAATTACAGAATATATAGAGATATAATAGCAATGCAAATTCTAATAAGGAAAAACTTAATTTACGGCTTGATTTTCTACACGTTCTCTTTTTCTCTGACCTCTTTGGGGGTTTGTATCCCTATCCATGTACTTTTTTCTCTTTTTCATATATCAATGAAGAGTTGATTCTGGTTAAAAGAAAACTATGGAAATAAGTAGATAATTTACACCAAACAAAGCCAAAAAAGATTTGTTTGAATTGGGAATTCTTCATTTCTCCCATTCCTTGTTAGCTTTATCTCTTTCTGATGTATTTTTCTAGTTGCTCTGTTCCTTTTTGAGGTCCGATTCTTATGTTCTCTTGTTATTTTTTCTTCCCGTTTCATTAATCAATTCATTTCTTGTATTTTTTTTTTTGAATGTGAGCTTACAGAATTGGTAGTATCGAACTGGCTAACCAACCAGTAAGTAACTCATAGCTAACCGGCAGTGTATTTGTAACAGTAATATTTTTCTTTGCTATATCATTGGAGGATATTCTCTTTTCAATTGGACAGTAAATTGAGAACAAGAAGTTCTGTATTTGCTAACTCAATCCAAATAATTATGCTTGGAGAGGGTCATGGGCATTTATTTTGTATTTGATAATTGAAGTAAGCTGACTGCACAATGTCCTAACGATTCCCCCTTTCCTTTTTTTCCCCTCTCTTCTTCTAAACAGTACCATCCAGATGTGAACAAGAACCCTGGATCAGAAGAGAGGTTCAAAGAGATAAGTGCTGCATATGAGGTGAGAATCAAGGCTCCCACATTAGAGTGTTAGTTTCTTGTGTTATTGTGTACATCTCATCTTTTTAGACCATTTTATTTAAGTCTTATTCTTTTGGATTGGAGCCACTTCTTATTTTGGTATTCTCCAGTATCTAATAATAATCCACTACTATGCATTTCTTTGAGTTCATGTGATAATGGAGTAGCTGTGTAGGTCCTATCAGATGATGAAAAAAGATCTTTATATGACCAATTTGGCGAGGCAGGTTTGCGGGGAGAATATGGCGTAATGAATAGTGGTTCACCGAGGGTAAGATTGCTGCTACCACTTTGCTTACAGGCTTATGCATTGTTATTATTTTCGAACATCTCATTGATTTAATGAACATTGCATATGCATTTTTATTGAAATTAGAGTAATTTATTTTTTCCTGGGGTGATTTGAAATATATTTGAAACTTCTCTTGTTAATTTGCTTTAATGATTCTATGGAATTCTTTTAGGTTGATCCCTTTGAAAATTTTGATGCATTCTTTGGCGGATCAGATGGACTTTTTGGAGAAAGAGATGGAATTGGAGGCATCAATTTAATAAATAAGAGGAGCGGAAGAAACCAGAATCTTGATATACAGTATGGTGATCGTTCTCTCATTGTTAGTTACTATGAGACTACTAACTATCATCCATGATGCAGAATATACAAAGAAAAAGGATTATGGACAATTGACCATTGGTCTCTAAGCTTGCTCTTATCATGGTTTTGTTTTGAACTGATTTTGTGTATTCTCTCACATATGTATTTGTAAATCAGATGGACTCTCACATATGCTTATAAGTAATCTGAGTCATACTTCTTTTCATTATTTCAATGATATGGTTGGTATCTTGTTAAAAAAAAAGGTAATCTTAGTCATACATTCTTTTCCCTCCTTTTAACCTTACAGTTATGACCTGCACTTAAGCCTTGAAGAATCAGTGTTTGGAGCAGAACAGGAAATTCAATTCTCTAATTTTGAGACATGCGAAAATTGTGATGGGACCGGTGCAAAATCTAGTAATTGCATAGGAACTTGTGCCAACTGTCATGGAAGAGGAGGAGTGGTCAAAACTCAGAGAACACCATTTGGAATGATGTCTCAGGTAGTTAAATATCTATATAGTAAAAATTGATGTTTTGCATTGAAAAAGAAAGTGCGACTTAATATCTTTCCTCTAAGACCTAAGTTAATGTACTTGTGACTGAAGCTCATTACTTTTAAGTTTAGACATTCTTTTTTTTTTTTTTATTTTTTTTATTTTTATTATGAAACAATATTTCATTGATGGTATGAAATATACAAAAGGCCCTGAAAAAGGAAATTACAAGAAAGCTCTCCAACTTGTAATAAAATCATTAAGAGAGTAATTGTTGAAGAGGGGTAGAAACATTTACACCAATCCAAAGCTAAAACAAGAACTCTATCAAAAAAAATTTCAAAGGAGAGGGTTTTGTCCTTGAACACCATTCGATTCCTTTCTAACAAAATAGACCAAAGGAAGGCGCGAAGATTTGAACCCATAGGGGCTATCCTGAAAGGGTGGCCCACCAGAATGCTGTCCAGAAGAATATGTGGTTGATCATGCAGGGCTATAGTCCATCCAAAGGCCGAGAGGATATAGTTCCAAAAGCGAGTGGCAAAGGGCACAACAAAAATAAGTGGCCTTGTGTCTCCGATGCTCCAAACCCGAAGAGACAGCAATGTGGGGAAAGATGAATGTATGGGTGTTTCCTCTGGATTCTGTCATGAGTGTTGAGAGTTCCATGGCTAAGTTCCCAGCAGAAAAAATTGACTTTCTTTGGGCATTTACCTTGTCATAGACAGGGGTAGAGTGTAGGGGCCGGTTGTGTAGTGTGAGTGTTGAGGAGGTTATAAATTGATTTGGTGGAGAACACTCCTGATGGCTCTAAGGGCCAAATCCATTGATCCCCCGGGGGGGCGGAGGGGCACAATCGGGTTAAGCAGTAGGGATAATTGTAGCCAATCCTTAATCTTCTCCTCCTTAAGTGGTCTTCGAAAATTATAGTTCCATGATGAGGTAGTGCTTGACCAACAGTCTTCAATAGTAGCTCCCCTGTTTGTAGCAAGAATGTGAAGTCTTGGAAAAAGAGAGGCAATAGTGCCCAGTTCAATCCATCTATCCATCCAGAAATTGGCTCGACTCTTCTCTCCCACCCGGCAAATGACAGTCTCCTTTATAAGGTTGCATTGTGGCAAAATCGCAGACCATGGTCCTTTGAGATTTGGATGGCATCTCGTGGGCCAGGGAGAGGTGTGAGTTCCATAGTATTTTGCTGTGATGAATCTCCTCCAAAGCTGGTTTGGTTCTGTTACGTAGCGCCAAACCCATTTAGAAAGGAGTGCATAATTCCTCTGTTTTATATTCCCAATGCCGAGACCTCCTTCAAAGTTAGGTAGCTATGTACGCTACCAATTGATAAGGTGTGAATCAACGTTGTTGTTTGGCCCTTCCCATAAAAAGTTCCTAAAGATCTTGTCCAGTTTCTCCACTGCTTTACCCGAAATCTTGAAGAGAGATAGATAGTAGGTGGGAAGGTTGGTGAGGATGGATTGAAGAATAATGAGCCTTCCGCCTTTAGAGATAAAATAGCCACATTCTTTGTTGAACACAATCTAATTCTAGGTTGTAATAAGTTGCTTCTATTATTATGTTTTAAACCATGGTGGCCACATACTTAGTATTTAAATTTATGTGAGTATGGATGTGTCCTTTTTGGAAAATCAACCCTTTTTTACCAAAAATTATCTTTAGGGGAAGAGACTAAATTTAGAGGATAAGGATGATAATTTTTGGGATATACCTGTCCCCCTTCCTAACATTATAAGTCCCAACTTTACTAGTCCTTCAATGCCAAGTGTAGAAGATTCTCACTCAAGGGGAGAATTACTACAAAATGATAAAACTGATTCAAATCCTGAGTTTAAGTTTTATACTAGAAGAAGACTCAATCAAACGAATGAGGACCGAATATCTGACTCATCACAAATCCAATCTGAAGCTCTGAGGGATGATTTTGAAACTCCAGGTAATCCATCTTCCATCCTTGTAACTTCGAATATTGAAAATGTATCATCTGTTGTTTCTGATCTCGATGTCCCTATAGCTTTAAGGAAAGGAACTCGAACTTGACCAAATATCCTCTTGCAAACTATATCTCTTGTAAAAAACTGTCAAGTAGTCATAAAGCTTTTACGTCTAGGATAACGAACTTGTTTATTCCAAGGAACATACAAGAAGCCCTAAATGATCCAAATTGGAAACAAGCTGTTATGGAGGAGATGAATGCTCTAAGACAGAATTGTACATGGGAGATAGTAGATTTGCTTAGAGATAAGAAAACTGTGGGCTGCAAGTGGGTCTTTACAATCAAGTGTAATGTTGATGGTAGTATTGAAAGGTATACTAGTTGCAAAGGGATTTACTTAAACCTATGGGATTGATTACTAGGAAACTTTTGCTCCTGTTGCTAAAATCAACAAAATTAGAATACTTTTATCTCTAGCTGCAAATTTAGATTGGCCCTTTATCAACTCGATGTAAAAAATGCTTTTCTGAATGGAGATCTTGAAGAAGAAGTATTTATGAGTTTACCACCGGGTTTTGAAGCTAACCTTGGGAAGGGCAAAGTATGCAGGTTAAAGAAATCTCTATATGGGCTCAAGCAGTCTCTGAGAGCATGGTTTGAACGATTTGGTAAAGTGGTCATGAGCTATGGATTTCTTCAGAGTCAAGCTGATCATACCATTTTTTATAAACGTTCTGGAAATAATAAAATTGCAATTTTGATTGTCTATGTAGATGATATTATGCTTACAGGTGATGATGAAGTAGAATTGGCCACTTTAAAGAAAATAATTGCATGCGAATTTCAAATTAAGGACCTAAAAAGTTAAAATACTTCCTAGGGATGGAGTTTGCGAGATCTAAGAAAGGTATCTTTGTTAATCAAAGAAAATATATTCTTGATTTACTTGAAGAAACAGGTTTGCTTGGATGCAAGATAGCTGAGACTCCTATTGAACCTAATTTGAAATTGGAAGCTGCAAAAGAAGAAGAAGTAAAGGACAAGGAATGATATCAAAACCTTGTGGGAAGACTCATTTACTCATCTCACACACGTCCAGATATTACTTTTGCAGTGAGTATGGTAAGCCAATTTATGCCTGAAGCTGCCTATAGAATTTTAAGATATCTGAAAGGAACTCCGGAAAATGTATATTGTTCAAAAAACACAACCATTTACAGGTTGAAATTTATATCGATGCTGATTGGGTAAGTACAATAGATAGAAGATCTACTTCAGGTTACTGTTCGTTTGTTGGAGGTAACTTAGTCACTTGGTGAAGTAAAGAAACAAAATTTAGTAGCTAGAAGCAGCGCTGAAGCTAAATTTAGGGCCTTAGTCCATGGTATTTGTGAAGGGATATGGATAAAAAGATTGCTTGAAGAATTGAAAGTCTTTCAGAAGGCACCCATACGAGTTTATTGCGACAACAAGGCTGCCATCTCCATAGCCCACAATCCAGTCCAACATGATAGGACTAATCATATTGAAATTGACAAACATTTCATAAAGGAAAAGGTGGACACCGGTGTGATATGTATCCCTTATCTCCCGACAATAGAACAGATTGCTGATGTGTTGACAAAAGGACTACCTAAAGTACAATTTGACAGGATGATTGACAAGCTGGCAATGAAAGATATCTTTAAACCAGCTTGAGGGGGAGTGTTGGTTTATTTGTGAATATTAATTGTAAGTAGTTGTAAATATTAATGATTATTCTAGTCTTATTTACATTCCTTTTATGTATTGAGCCTTTCTCCTATATAAGAAGGCTATGTATTTCTTACTTTTGATATTGGAATACAAATAATTTTATTTCATCAAAACTAAGTTGACCTTTATATGATCAACAGTCAACACTAATATAAGTTAGATATTATTTTAAATGGTTCCTGTTAAATCATCACTTAATGCAGAAGCTTAAGTTGATAGATTAGAGTATAATTAACCTTTTATACCTACTTTTAATACTTTTCCTCATTTGTGGGCTTTAAAATGATGACAAGGCCCAATATCTGACTATACATATTAATCGGAGGGGAAAAGACATTATAAGAATTGAACACAAACCTCCCACTCTAATACCATGCTAGGTATATTTTATTTATTTTTATACTTATTCTAATTGTTACAATAGACGTCAGTGGGAAGATGACCAAAAACTTATTCTTGATTATAAATCGTGAACTCTATAATCTTGTGAAGTTTCCCATATGATATTTTAAAAGTTCCATGTGTTATTATGAATTCTAGTTTTTGGAGAAGGATCATGTGAAAATCCAAATATTTGAAAAGTTCCACGTGTTATTATGAATTCTAGTTTTTGGAGAAGGATCATGTGAAAATCCAACTCTTTCACCTACTAGATTTACCTTAATGTATTGCATTGTTCTGTTATATCTTAGGTGTCCACATGTTCAAAGTGTGGTGGTGATGGTAAGATAATAACAGAGTTATGCCGAAGCTGTGGTGGCAGTGGTCAATTGCAATCAATTAGAAAAATGAAAATAGTAATCCCACCGGGCGTCACTGATGGAGCCACCATGCAAATTCAAAGAGAAGGCAGTTTTGATAAGAAAAGG GTGAAGTTCTGTGCTCGACCCCGCGCTATAATGCCACTAAATGGTATTTGCAGTCCCTGCAATGCTAATCCAAACCCAACTTCTACATTTCAGCTAGTTTCTCCATCTGCAATTCGACCTAATGTGTTATATTTTCTCAACCCACCTTCCGTCAACCTTGGTTCCAGCTCGTGCTATTCCAGATTTTCCCGCGTTGTTGGCCCACTTAGGAGCGCGGATTTTCAAACCAGAAGTCGATTAACATTCGTACGCCGTGGTGCAAGTGCAACAGGGTCTGCCGCTACTGATCACTATTCGACGTTGAATGTTAGCCGGAACGCCACATTGCAGGAAATCAAAAACTCATATAAGAAACTCGCCCGTAAGTTTATTATTGATTTTAACGGGACTTCTTGGTCGCCAGTGAAGCGAATTGGATGTAAGCTGACTGCACAATGTCCTAACGATTCCCCCTTTCCTTTTTTTCCCCTCTCTTCTTCTAAACAGTACCATCCAGATGTGAACAAGAACCCTGGATCAGAAGAGAGGTTCAAAGAGATAAGTGCTGCATATGAGGTCCTATCAGATGATGAAAAAAGATCTTTATATGACCAATTTGGCGAGGCAGGTTTGCGGGGAGAATATGGCGTAATGAATAGTGGTTCACCGAGGGTTGATCCCTTTGAAAATTTTGATGCATTCTTTGGCGGATCAGATGGACTTTTTGGAGAAAGAGATGGAATTGGAGGCATCAATTTAATAAATAAGAGGAGCGGAAGAAACCAGAATCTTGATATACATTATGACCTGCACTTAAGCCTTGAAGAATCAGTGTTTGGAGCAGAACAGGAAATTCAATTCTCTAATTTTGAGACATGCGAAAATTGTGATGGGACCGGTGCAAAATCTAGTAATTGCATAGGAACTTGTGCCAACTGTCATGGAAGAGGAGGAGTGGTCAAAACTCAGAGAACACCATTTGGAATGATGTCTCAGGTAGTGTCCACATGTTCAAAGTGTGGTGGTGATGGTAAGATAATAACAGAGTTATGCCGAAGCTGTGGTGGCAGTGGTCAATTGCAATCAATTAGAAAAATGAAAATAGTAATCCCACCGGGCGTCACTGATGGAGCCACCATGCAAATTCAAAGAGAAGGCAGTTTTGATAAGAAAAGG GTGAAGTTCTGTGCTCGACCCCGCGCTATAATGCCACTAAATGGTATTTGCAGTCCCTGCAATGCTAATCCAAACCCAACTTCTACATTTCAGCTAGTTTCTCCATCTGCAATTCGACCTAATGTGTTATATTTTCTCAACCCACCTTCCGTCAACCTTGGTTCCAGCTCGTGCTATTCCAGATTTTCCCGCGTTGTTGGCCCACTTAGGAGCGCGGATTTTCAAACCAGAAGTCGATTAACATTCGTACGCCGTGGTGCAAGTGCAACAGGGTCTGCCGCTACTGATCACTATTCGACGTTGAATGTTAGCCGGAACGCCACATTGCAGGAAATCAAAAACTCATATAAGAAACTCGCCCGTAAGTTTATTATTGATTTTAACGGGACTTCTTGGTCGCCAGTGAAGCGAATTGGATGTAAGCTGACTGCACAATGTCCTAACGATTCCCCCTTTCCTTTTTTTCCCCTCTCTTCTTCTAAACAGTACCATCCAGATGTGAACAAGAACCCTGGATCAGAAGAGAGGTTCAAAGAGATAAGTGCTGCATATGAGGTCCTATCAGATGATGAAAAAAGATCTTTATATGACCAATTTGGCGAGGCAGGTTTGCGGGGAGAATATGGCGTAATGAATAGTGGTTCACCGAGGGTTGATCCCTTTGAAAATTTTGATGCATTCTTTGGCGGATCAGATGGACTTTTTGGAGAAAGAGATGGAATTGGAGGCATCAATTTAATAAATAAGAGGAGCGGAAGAAACCAGAATCTTGATATACATTATGACCTGCACTTAAGCCTTGAAGAATCAGTGTTTGGAGCAGAACAGGAAATTCAATTCTCTAATTTTGAGACATGCGAAAATTGTGATGGGACCGGTGCAAAATCTAGTAATTGCATAGGAACTTGTGCCAACTGTCATGGAAGAGGAGGAGTGGTCAAAACTCAGAGAACACCATTTGGAATGATGTCTCAGGTAGTGTCCACATGTTCAAAGTGTGGTGGTGATGGTAAGATAATAACAGAGTTATGCCGAAGCTGTGGTGGCAGTGGTCAATTGCAATCAATTAGAAAAATGAAAATAGTAATCCCACCGGGCGTCACTGATGGAGCCACCATGCAAATTCAAAGAGAAGGCAGTTTTGATAAGAAAAGG VKFCARPRAIMPLNGICSPCNANPNPTSTFQLVSPSAIRPNVLYFLNPPSVNLGSSSCYSRFSRVVGPLRSADFQTRSRLTFVRRGASATGSAATDHYSTLNVSRNATLQEIKNSYKKLARKFIIDFNGTSWSPVKRIGCKLTAQCPNDSPFPFFPLSSSKQYHPDVNKNPGSEERFKEISAAYEVLSDDEKRSLYDQFGEAGLRGEYGVMNSGSPRVDPFENFDAFFGGSDGLFGERDGIGGINLINKRSGRNQNLDIHYDLHLSLEESVFGAEQEIQFSNFETCENCDGTGAKSSNCIGTCANCHGRGGVVKTQRTPFGMMSQVVSTCSKCGGDGKIITELCRSCGGSGQLQSIRKMKIVIPPGVTDGATMQIQREGSFDKKR Homology
BLAST of MS018855 vs. NCBI nr
Match: XP_022137137.1 (uncharacterized protein LOC111008684 isoform X5 [Momordica charantia]) HSP 1 Score: 647.9 bits (1670), Expect = 5.5e-182 Identity = 333/375 (88.80%), Postives = 333/375 (88.80%), Query Frame = 0
BLAST of MS018855 vs. NCBI nr
Match: XP_022137136.1 (uncharacterized protein LOC111008684 isoform X4 [Momordica charantia]) HSP 1 Score: 647.9 bits (1670), Expect = 5.5e-182 Identity = 333/375 (88.80%), Postives = 333/375 (88.80%), Query Frame = 0
BLAST of MS018855 vs. NCBI nr
Match: XP_022137134.1 (uncharacterized protein LOC111008684 isoform X2 [Momordica charantia]) HSP 1 Score: 647.9 bits (1670), Expect = 5.5e-182 Identity = 333/375 (88.80%), Postives = 333/375 (88.80%), Query Frame = 0
BLAST of MS018855 vs. NCBI nr
Match: XP_022137133.1 (uncharacterized protein LOC111008684 isoform X1 [Momordica charantia]) HSP 1 Score: 647.9 bits (1670), Expect = 5.5e-182 Identity = 333/375 (88.80%), Postives = 333/375 (88.80%), Query Frame = 0
BLAST of MS018855 vs. NCBI nr
Match: XP_023521212.1 (uncharacterized protein LOC111784933 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 501.5 bits (1290), Expect = 6.4e-138 Identity = 267/370 (72.16%), Postives = 290/370 (78.38%), Query Frame = 0
BLAST of MS018855 vs. ExPASy Swiss-Prot
Match: Q9SJZ7 (Chaperone protein dnaJ A6, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=DJA6 PE=2 SV=2) HSP 1 Score: 201.8 bits (512), Expect = 1.4e-50 Identity = 129/334 (38.62%), Postives = 178/334 (53.29%), Query Frame = 0
BLAST of MS018855 vs. ExPASy Swiss-Prot
Match: B1WVR2 (Chaperone protein DnaJ OS=Crocosphaera subtropica (strain ATCC 51142 / BH68) OX=43989 GN=dnaJ PE=3 SV=1) HSP 1 Score: 197.2 bits (500), Expect = 3.4e-49 Identity = 115/288 (39.93%), Postives = 152/288 (52.78%), Query Frame = 0
BLAST of MS018855 vs. ExPASy Swiss-Prot
Match: B1XQF6 (Chaperone protein DnaJ OS=Synechococcus sp. (strain ATCC 27264 / PCC 7002 / PR-6) OX=32049 GN=dnaJ PE=3 SV=1) HSP 1 Score: 196.8 bits (499), Expect = 4.4e-49 Identity = 115/292 (39.38%), Postives = 156/292 (53.42%), Query Frame = 0
BLAST of MS018855 vs. ExPASy Swiss-Prot
Match: B0JW23 (Chaperone protein DnaJ OS=Microcystis aeruginosa (strain NIES-843) OX=449447 GN=dnaJ PE=3 SV=1) HSP 1 Score: 194.1 bits (492), Expect = 2.9e-48 Identity = 111/285 (38.95%), Postives = 152/285 (53.33%), Query Frame = 0
BLAST of MS018855 vs. ExPASy Swiss-Prot
Match: Q55505 (Chaperone protein DnaJ 1 OS=Synechocystis sp. (strain PCC 6803 / Kazusa) OX=1111708 GN=dnaJ1 PE=3 SV=1) HSP 1 Score: 193.4 bits (490), Expect = 4.9e-48 Identity = 114/289 (39.45%), Postives = 158/289 (54.67%), Query Frame = 0
BLAST of MS018855 vs. ExPASy TrEMBL
Match: A0A6J1C7F2 (uncharacterized protein LOC111008684 isoform X5 OS=Momordica charantia OX=3673 GN=LOC111008684 PE=3 SV=1) HSP 1 Score: 647.9 bits (1670), Expect = 2.7e-182 Identity = 333/375 (88.80%), Postives = 333/375 (88.80%), Query Frame = 0
BLAST of MS018855 vs. ExPASy TrEMBL
Match: A0A6J1C5M5 (uncharacterized protein LOC111008684 isoform X4 OS=Momordica charantia OX=3673 GN=LOC111008684 PE=3 SV=1) HSP 1 Score: 647.9 bits (1670), Expect = 2.7e-182 Identity = 333/375 (88.80%), Postives = 333/375 (88.80%), Query Frame = 0
BLAST of MS018855 vs. ExPASy TrEMBL
Match: A0A6J1C6D7 (uncharacterized protein LOC111008684 isoform X2 OS=Momordica charantia OX=3673 GN=LOC111008684 PE=3 SV=1) HSP 1 Score: 647.9 bits (1670), Expect = 2.7e-182 Identity = 333/375 (88.80%), Postives = 333/375 (88.80%), Query Frame = 0
BLAST of MS018855 vs. ExPASy TrEMBL
Match: A0A6J1C9G9 (uncharacterized protein LOC111008684 isoform X1 OS=Momordica charantia OX=3673 GN=LOC111008684 PE=3 SV=1) HSP 1 Score: 647.9 bits (1670), Expect = 2.7e-182 Identity = 333/375 (88.80%), Postives = 333/375 (88.80%), Query Frame = 0
BLAST of MS018855 vs. ExPASy TrEMBL
Match: A0A0A0LT51 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_1G031710 PE=4 SV=1) HSP 1 Score: 531.6 bits (1368), Expect = 2.8e-147 Identity = 282/387 (72.87%), Postives = 314/387 (81.14%), Query Frame = 0
BLAST of MS018855 vs. TAIR 10
Match: AT3G17830.1 (Molecular chaperone Hsp40/DnaJ family protein ) HSP 1 Score: 307.0 bits (785), Expect = 2.2e-83 Identity = 178/362 (49.17%), Postives = 231/362 (63.81%), Query Frame = 0
BLAST of MS018855 vs. TAIR 10
Match: AT1G80030.1 (Molecular chaperone Hsp40/DnaJ family protein ) HSP 1 Score: 219.9 bits (559), Expect = 3.5e-57 Identity = 126/297 (42.42%), Postives = 178/297 (59.93%), Query Frame = 0
BLAST of MS018855 vs. TAIR 10
Match: AT1G80030.3 (Molecular chaperone Hsp40/DnaJ family protein ) HSP 1 Score: 219.9 bits (559), Expect = 3.5e-57 Identity = 126/297 (42.42%), Postives = 178/297 (59.93%), Query Frame = 0
BLAST of MS018855 vs. TAIR 10
Match: AT1G80030.2 (Molecular chaperone Hsp40/DnaJ family protein ) HSP 1 Score: 219.9 bits (559), Expect = 3.5e-57 Identity = 126/297 (42.42%), Postives = 178/297 (59.93%), Query Frame = 0
BLAST of MS018855 vs. TAIR 10
Match: AT2G22360.1 (DNAJ heat shock family protein ) HSP 1 Score: 201.8 bits (512), Expect = 9.8e-52 Identity = 129/334 (38.62%), Postives = 178/334 (53.29%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Bitter gourd (TR) v1
Date Performed: 2021-10-25 Position : 0 Zoom : x 1
Relationships
The following mRNA feature(s) are a part of this gene:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
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